Modeling of hydrodynamics of highly concentrated granulated media in the blending silo | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2013. № 4(24).

Modeling of hydrodynamics of highly concentrated granulated media in the blending silo

In this paper we study the dynamics of highly concentrated granulated well granular medium in the vertical mixing hopper. To describe such a flow, a differential model proposed by the authors based on the provision of continuum mechanics with allowance for rheological properties of the granular material and the additional transport equation for the chaotic energy of the pulsation of the granules. The reliability of the proposed model is established by comparing the calculated average velocity distribution environment with the experimental data.

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Keywords

гидродинамика, скорость, гранулированная среда, условия скольжения, инерционный режим, напряжение, вихрь, функция тока, hydrodynamics, velocity, granular medium, slip condition, fast motion regime, stress tensor, vorticity, stream function

Authors

NameOrganizationE-mail
Shvab VeniaminovichTomsk State Universityavshvab@inbox.ru
Martsenko Anastsia AleksandrovnaTomsk State Universitynewerowa@sibmail.com
Martsenko Maksim SergeevichTomsk State Universitymartsenko@sibmail.com
Всего: 3

References

Макаров Ю. И. Аппараты для смешения сыпучих материалов. М.: Машиностроение, 1973. 216 с.
Росляк А.Т., Бирюков Ю.А., Пачин В.Н. Пневматические методы и аппараты порошковой технологии. Томск: Изд-во Том. ун-та, 1990. 272 с.
Shvab A. V., Martsenko M.S., Ryzhikh Yu.N. Modeling the hydrodynamics and the process of averaging a highly concentrated granulated medium in powder technology apparatuses // J. Engineering Physics and Thermophysics. 2011. V. 84. No. 4. P. 730-735.
Шваб А.В., Марценко М.С. Модель движения высококонцентрированной гранулированной среды // Вестник Томского государственного университета. Математика и механика. 2011. № 3 (15). С. 108-116.
Механика гранулированных сред. Теория быстрых движений: сб. ст.: пер. с англ. М.: Мир, 1985. 280 c.
Ahmadi G., Shahinpoor M. Towards a turbulent modeling of rapid flow of granular materials // Powder Technology, 1983. V. 35. No. 2. P. 241-248.
Hutter K., Sheiwiller T. Rapid Plane Flow of Granular Materials down a Chute // Mechanics of Granular Materials. Amsterdam: Elsevier Science Publishers, 1983. P. 283-293.
Peyret R., Taylor T. Computational Methods for Fluid Flow. Springer-Verlag, 1983.
Patankar S. Numerical Heat Transfer and Fluid Flow. N.Y.: Hemisphere Publishing Corporation, 1980.
Nedderman R., Davies S., Horton D. The flow of granular materials round obstacles // Powder Technology. 1980. V. 25. No. 2. P. 215-223.
 Modeling of hydrodynamics of highly concentrated granulated media in the blending silo | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2013. № 4(24).

Modeling of hydrodynamics of highly concentrated granulated media in the blending silo | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2013. № 4(24).

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